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Dynamic mechanical behavior of syntactic iron foams with glass microspheres

机译:复合玻璃微球泡沫铁的动态力学行为

摘要

In this work, the mechanical behavior of syntactic foams made of hollow glass microspheres mixed in an iron matrix was investigated. This type of material is interesting since, when compared to other types of metal foams, it offers greatly increased quasi-static compressive strength, though at lower maximum porosity and thus higher density. Moreover it maintains the advantages and useful properties of metal foams such as thermal and environmental resistance. In particular, the strain-rate sensitivity response was studied. The experimental characterization was performed by means of compression tests at three strain-rate levels: at the highest strain-rate level a SHPB was used. Type and content of glass microspheres were also studied. The experimental results showed that the compression behavior of syntactic foams, similarly to the other types of foams, is strongly affected by all the examined factors. For what concerns the strain-rate, it was found to increase material characteristics in almost all cases. The influence of the matrix behavior on the composite was identified as the determining parameter in this respect. In order to evaluate the results obtained with the described tests campaign, the experimental data were further elaborated by means of an empirical analytical strain-rate sensitive model. The dependency of the material response on model parameters was widely discussed. © 2012 Elsevier B.V.
机译:在这项工作中,研究了混合在铁基质中的中空玻璃微球制成的复合泡沫的力学行为。这种类型的材料很有趣,因为与其他类型的金属泡沫相比,它提供了大大提高的准静态抗压强度,尽管其最大孔隙率较低,因此密度较高。而且,它保持了金属泡沫的优点和有用的特性,例如耐热性和耐环境性。特别地,研究了应变速率敏感性响应。通过在三个应变率水平下的压缩测试进行实验表征:在最高应变率水平下,使用SHPB。还研究了玻璃微球的类型和含量。实验结果表明,与其他类型的泡沫类似,复合泡沫的压缩行为受到所有检查因素的强烈影响。对于应变率,几乎在所有情况下都可以提高材料特性。在这方面,基质行为对复合材料的影响被确定为决定性参数。为了评估通过所述测试活动获得的结果,通过经验分析应变率敏感模型进一步完善了实验数据。材料响应对模型参数的依赖性得到了广泛讨论。 ©2012 Elsevier B.V.

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